[0001] This invention relates to aqueous organic polyisocyanate adhesives containing a major
portion of the lignin (waste liquor solids) resulting from the chemical pulping of
lignocellulose. This lignin product comprises principally recovered lignin which has
been modified by the chemical pulping procedure to which it has been subjected and
accordingly is to be distinguished from native lignin, i.e. the "proto-lignin" found
in the lignocellulosic structure of growing plants.
[0002] Organic polyisocyanate resins containing lignin are not new to the art.
[0003] Nichols U.S. 2,854,422 discloses a composition comprising diisocyanate-linked elastomers
and lignin wherein the lignin is added to a formed polyurethane and is merely present
as a filler.
[0004] Mills et al U.S. 2,906,718 discloses lignin- reinforceable, vulcanizeable rubber
stocks wherein the lignin takes the place of the usual carbon black reinforcing material.
[0005] Moorer at al U.S. 3,519,581 disclose a method of producing synthetic lignin-polyisocyanate
resins, which may be used as adhesives, by dissolving lignin in a glycol solvent and
reacting it with an organic polyisocyanate.
[0006] Santelli et al U.S. 3,577,358 disclose organic isocyanate-lignin reaction products,
which also may be used as adhesives, formed by reacting an organic polyisocyanate
with lignin dissolved in a non-aqueous solvent therefor, the solvent again being a
glycol, or dioxane.
[0007] However, the polyisocyanate-lignin adhesives of the prior art are neither designed
nor suitable for large scale use as bonding agents for wood products, in particular
'for bonding wood particles or fibers together in the manufacture of wood composition
board. The reason for this is to be found in the fact that the patentees sought assiduously
to avoid the inclusion of water in the formulation of the adhesives of their inventions
in order to avoid excessive urethane formation and foaming during their preparation
and use. Moorer at al state in U.S. 3,519,581 for example, at column 6, lines 21-28:
"Water is a solvent for the alkali metal and the ammonium salts of lignin. However,
water is so extremely reactive with polyisocyanates that water is not availed of as
a solvent for the lignin, but when used is only used in small amount for reaction
with part of the polyisocyanate for the production of carbon dioxide as a by-product,
the generation of the carbon dioxide resulting in the production of a foam."
[0008] The_ prior art accordingly teaches the use of water with polyisocyanate-lignin mixtures
only as a terminal foaming or blowing agent when a foamed urethane product is desired.
The prior art adhesives incorporate not an aqueous solvent for the lignin, but rather
a proportion of a glycol, ether, or other non-aqueous solvent. They accordingly are
totally unsuited for use as wood bonding adhesives.
[0009] Wood adhesives must be tolerant of water first, because of the inherent water content
of pulping waste liquors, which are the primary sources of the lignin solids used
in the adhesives, and second because the wood pieces to be bonded usually have an
appreciable water content. For this reason it is impractical, indeed impossible, to
employ water-sensitive polyisocyanates as components of adhesive mixtures containing
also aqueous solutions of lignin, the adhesive mixtures to be used in the gluing together
of pieces of wet wood.
[0010] Furthermore, in the art of gluing wood, the adhesives to be used in gluing wood must
be of relatively low viscosity so that they may be applied to the wood pieces by such
standard techniques as spray-, or roll-, or curtain-coating. When thus applied, they
must cover the pieces uniformly and bond them together efficiently.
[0011] This desired result cannot be achieved by the polyisocyanate-lignin adhesive of the
prior art. The prior art adhesives are gummy products of extremely high viscosity.
For example, the polyisocyanate-lignin adhesive disclosed in Santelli et al U.S. 3,577,358,
at col. 8, lines 16-30 is described as a paste having a softening point of over 270
0C. This paste is disclosed as an adhesive for glass. It is totally unsuited as an
adhesive for wood. Its high viscosity prevents its effective application.
[0012] We have now discovered, and it is the essence of the present invention,that under
certain circumstances water in fact may be used in major amount in the manufacture
of organic polyisocyanate-lignin adhesives.to be used in the manufacture of bonded
wood products, in particular in the manufacture of wood composition board products
such as wood particle board and wood fiber board. This discovery is based on three
principal observations.
[0013] First, water is an excellent solvent'for lignin and may be used in that capacity
in the formulation of the herein described adhesive.
[0014] Second, the polyisocyanates in the molecular weight range of 200-10,000 are oily,
strongly hydrophobic liquids which at ambient temperature react only very slowly with
water to form urethanes and carbon dioxide gas. This reaction occurs only at the limited
interface between the oily polyisocyanate phase and the water phase. Even when the
polyisocyanate is emulsified with water, the reaction takes place so slowly at ordinary
mill temperatures that gas formation is not a problem. The aqueous solution of lignin
provided by ordinary waste liquor resulting from the chemical pulping of lignocellulose
this may be used as the water solution of lignin without any modification whatsoever.
[0015] Third, the gaseous evolution which in minor degree does take place in the gluing
of wood pieces with the herein described adhesive is entirely accommodated by the
porous matrix to which the glue is applied. In particular, a matrix comprising a wood
composition board furnish is sufficiently porous to absorb totally any carbon dioxide
gas evolved by the reaction between the polyisocyanates and water without adversely
affecting product properties.
[0016] In its broad aspect the adhesive of theinvention accordingly comprises an organic
polyisocyanate having a molecular weight in the range of from 200 to 10,000 and an
aqueous solution of waste liquor solids, preferably the waste liquor derived from
chemical pulping of lignocellulose, the water being used in amount sufficient to dissolve
the lignin and to establish a working adhesive viscosity.
[0017] The invention further comprises as a new article of :i manufacture the glued product
comprising pieces of wood bonded together with the aforesaid adhesive. In particular,
it comprises wood composition board comprising a hot-consolidated mat comprising small
pieces of wood glued together with the said adhesive.
[0018] As indicated above, the essential components of the herein described adhesive are
a polyisocyanate, lignin, and water. These are used in the following general and preferred
proportions expressed in parts by weight
[0019]

[0020] Considering first the organic polyisocyanate component of the adhesive:
The organic polyisocyanates are generally applicable in the adhesives of the invention.
These include the aliphatic, alicyclic, and aromatic polyisocyanates characterized
by containing two or more isocyanato groups.
[0021] Illustrative of such compounds are the following:
m and p phenylene diisocyanates Toluene - 2, 4- and 2, 6- diisocyanates Diphenylmethane
- 4, 4 - diisocyanate* 4 chloro-1, 3-phenylene diisocyanate Napthalene-1, 5- diisocyanate Diphenylene-4,
4- diisocyanate 3, 3' - Dimethyl diphenylmethane-4, 4'-diisocyanate 3- Methyldiphenylmethane-4,
4'-diisocyanate Diphenylether diisocyanate Cyclohexane-2, 4- and 2,3-diisocyanates
1-Methyl cyclohexyl-2, 4-and 2, 6-diisocyanates Bis(isocyanatocyclohexyl-) methane
2,4, 6- Triisocyanatotoluene 2,4,4- Triisocyanatodiphenyl ether Polymethylene polyphenyl
polyisocyanates* Methylene diphenyl diisocyanate Triphenylmethane triisocyanate* 3,3' - Ditolylene-4, 4-diisocyanate 4,4' Methylenebis (2-methyl-phenyl isocyanate)
Hexamethylene diisocyanate Cyclohexylene-1,3 and 1,2-diisocyanate
[0022] Of the foregoing, the preferred ones for reasons of present or potential commercial
availability, and effective action, are marked by an asterisk (
*). Of particular interest are the polyisocyanates sold under the brand names of "PBA
1042" (The Rubicon Chemicals Inc.) and "Papi" (The Upjohn Co.). These comprise principally
polymethylene polyphenyl polyisocyanates with a number average molecular weight of
340 to 400.
[0023] It is critical to the successful use of the herein described polyisocyanate adhesive
components that they have a molecular weight of from 200 to 10,000, preferably from
300 to 2000. Polyisocyanates of too low molecular weight form mixtures of too low
viscosity and too high substrate penetration characteristics to be useful as adhesives.
Also, they are considerably more volatile, quite toxic and accordingly more dangerous
to use in the hot press.
[0024] Polyisocyanates of too high molecular weight tend to produce adhesive mixtures which
are too viscous to be handled and used readily as wood adhesives. This is true even
though the viscosity of the adhesive mixture may be lowered by adding water or aqueous
lignin solutions directly to the hydrophobic polyisocyanates and emulsifying them
to yield a product of low viscosity. When polyisocyanates of too high molecular weight
are thus treated, the resulting emulsions, although of low viscosity, are too unstable
to be useful, having a service life of but a few minutes.
[0025] Polyisocyanates of suitably high molecular weight may be prepared by using large
molecule isocyanate monomers. Alternatively they may be prepared in known manner by
taking advantage of the reactive isocyanate groups of the monomer and building up
multiple molecular units of higher molecular weight. "Chain builders" useful for this
purpose are those containing active hydrogen atoms, in particular the polyesters and
polyols, such as the glycols and glycol ethers used in predetermined amount sufficient
to produce reactive polyisocyanate prepolymers of the desired molecular weight and
significant excess isocyanate functionality.
[0026] Illustrative polyesters and polyol ethers are the following:
Polyethylene glycols to 6000 mol.wt. (200 to 2000 preferred)* Polypropylene glycols to 6000 md.wt. (200 to 2000 preferred)* Ethylene glycol monobutyl ether ("Butyl cellosolve") Diethylene glycol monobutyl
ether ("Butyl carbitol:)* Ethylene glycol monoethyl ether ("Cellosolve")* Diethylene glycol monoethyl ether
("Carbitol") Cellosolve aeetate Dimethoxy tetraglycol Dipropylene glycol methyl ether
Ethylene glycol monomethyl ether ("methyl cellosolve") Sorbitol* Phenyl cellosolve Propylene glycol methyl ether Triethylene glycol Tripropylene glycol
methyl ether Glycols or polyglycols. partially esterified with polycarboxylic organic
acids such as adipic, sebacic, succinic, oxalic, etc. 2,4,6- Hexane triol* Glycerol* Propylene glycol partially esterified with adipic acid* Trimethylol propane* Acrylic and methacrylic acid esters
[0027] Preferred members of the above group are indicated by an asterisk (
*).
[0028] The polyisocyanate materials, with or without the incorporation of the chain building
adducts are manufactured by conventional methods. They usually contain a preponderance
of dimers and trimers with smaller proportions if higher polymers. They serve the
adhesive function of reacting in the hot press with the various functional groups
on the lignin molecules, on the urethane matrix, and on both the cellulosic and native
lignin of wood itself, to form a highly efficient agent for bonding together pieces
of wood or other substrate.
[0029] Considering next the lignin component of the herein described adhesives:
Lignin derived from a wide variety of sources may be employed in the formulation of
the adhesives. The preferred source is one or a mixture of the various waste liquors
resulting from the chemical pulping of lignocellulose. Exemplary.are:
Kraft waste liquor Soda waste liquor Calcium base sulfite waste liquor Magnesium base
sulfite waste liquor Ammonium base sulfite waste liquor Sodium base sulfite waste
liquor . Magnafite waste liquor Sodafite waste liquor Chlorinated waste liquors Brominated
waste liquors
[0030] Lignins from hardwood and woft wood sources may also be used, as may lignins from
acid-precipitated and alkali- reconstituted kraft liquors. Desugared lignins also
may be used.
[0031] The chlorinated waste liquors derived from paper mill bleach plants are of particular
interest because they are abundant and of little present commercial value. Both the
chlorinated and brominated waste liquors (1-30% by weight halide ion, lignin solids
basis) are of further interest because of their fire resistant properties. Also, chlorination
and bromination make the lignins more reactive chemically toward isocyanates and other
synthetic resin polymers.
[0032] Whatever their source, the waste liquors may be used at their original process pH,
viz. the entire range of pH 1 to pH 13. They also may be used in a wide range of aqueous
dilutions, ranging from their original process solids content of 10 or 12% by weight
up to a concentrated solids content of from 20 to 55% by weight.
[0033] The lignin residues are effectively incorporated into the matrix of isocyanate polymer
as it cures, becoming an integral part of the adhesive structure. In fact, the lignin
residues can actually be used to form higher molecular weight lignin-isocyanate polymers
replacing, and behaving like, the polyols normally employed for- that purpose.
[0034] Turning now to the water component of the herein described adhesives:
As noted above, a substantial amount of water is used in the formulation of the adhesives
in spite of the fact that the polyisocyanates conventionally are considered to be
notoriously water reactive. The water serves several valuable and essential functions.
[0035] It serves as a solvent for the lignin solids, replacing expensive and sometimes toxic
organic solvents, which must be almost totally removed by evaporation prior to hot
pressing, thereby adding a further element of waste and cost.
[0036] It serves as a valuable viscosity control agent in the formulation of adhesives which
may be applied effectively to wood pieces by current spray coating and other techniques.
In the presence of water, the polyisocyanates, even those of substantial molecular
weight, may be emulsified to form emulsions of relatively low, and sprayable viscosity.
[0037] The water also serves a valuable heat transport function. During hot pressing it
is converted to steam at the board surfaces and in this form carries platen heat to
the center of the particle board or other product being glued, thus materially shortening
the hot pressing cycle. At the same time it serves an important plasticizing function
as required to accommodate irregularities in chip geometry during the manufacture
of wood particle board, thus gaining intimate contact between individual chip surfaces
through plastic flow under pressure, thereby eliminating excessive void volume and
poorly bonded areas in the center of the board. Still further, it provides the pre-pressing
tack needed for cold press mat consolidation, while depositing the lignin solids on
the surface of the chips where they react with the cyanato groups of the polyisocyanate
component of the adhesives. The water solvent, having performed these essential functions,
then leaves the board as steam.
[0038] Other materials may be incorporated in the adhesives as desirable or necessary to
achieve desired properties in the finished adhesives.
[0039] Thus formaldehyde may be added in the polyisocyanate- formaldehyde ratio of from
3:1 to 6:1. The formaldehyde reacts with some of the lignin solids and also with any
polyurea which may be present to-form additional polymeric binder. Other additives
which may be incorporated in the adhesives include fillers, wax emulsions, emulsion
stabilizers, coloring materials, and preservatives used in conventional amount and
manner.
[0040] In formulating the adhesives of the invention with the above primary components,
these components in predetermined proportions are simply mixed in suitable and conventional
mixing equipment until a uniform mixture is obtained. Preferably they are mixed in
an intensive-shear mixer until the mixture is smooth.
[0041] The order of mixing is not of critical importance. However, in a typical sequence
the polyisocyanate is placed in the mixer first. Any additives then are added and
the constituents mixed until smooth. Next, the water solution of lignin is mixed in
and, if necessary, additional water added in amount sufficient to achieve the desired
viscosity.
[0042] In order to minimize reaction between the isocyanate and water to form the corresponding
urethane and liberate carbon dioxide, mixing is carried out at or near room temperature
(10-30
0C). As indicated above, under the conditions of the invention this reaction occurs
very slowly and when the adhesive is applied to the gluing of wood does not interfere
because of the porous character of the wood.
[0043] The finished adhesive is stable for a reasonable length of time and may be stored
and used in the plant in conventional manner. The unmixed components may be stored
for extended periods of time. When the adhesive is used in the manufacture of wood
composition board such as wood fiberboard or wood particle board, wood fibers or particles
of predetermined moisture content are coated with the adhesive by atomizing or tumbling
in the conventional manner. The adhesive sprayed may be the finished adhesive, or
may comprise the adhesive components sprayed on the particles either simultaneously
or sequentially.
[0044] Where the polyisocyanate component of the adhesive is capable of forming a stable
emulsion in water, the adhesive may be emulsified and applied as an emulsion of low
viscosity, e.g. a viscosity equivalent to 10 to 50 centipoises at 25°C.
[0045] In instances where the adhesive is not emulisifed prior to application, the individual
components may be applied separately at viscosity levels equivalent to 50 to 500 centipoises
at 25°C.
[0046] An application of from 1 to 10% of adhesive, solids basis, conventionally is employed.
The adhesive coated wood particles then are felted or formed into a mat of the desired
proportions which next is consolidated to the desired thickness and density in a hot
press. Typical press conditions are from 14.10 to 42.3 kg/cm
2, at from 150 to 220 degrees C. for from 1.5 to 10 minutes.
[0047] The aqueous polyisocyanate-lignin adhesives of the invention and the manner of their
application to the manufacture of wood composition board are illustrated in the following
examples, wherein proportions are given in parts by weight.
[0048] In examples 1-26 particle board was made from particles of mixed pine wood having
a moisture content of about 4.5%. The adhesive was sprayed onto the particles for
a spray time of from 1 to 15 minutes. The forming time was 5 minutes. No wax was used.
[0049] The resulting mat was cold prepressed for 5 seconds at 21.04 kg/cm
2 followed by 1 second hold. It then was hot pressed for 4.5 minutes, where isocyanate-lignin
adhesives and urea formaldehyde adhesives were used, or for 5.5 minutes where phenol-formaldehyde
resins were used for purposes of comparison.
[0050] The time to stops in the press was 10-15 seconds. The pressing temperature was 325
0F. and the platen pressure was 24.55 kg/cm
2 to stops, followed by 15.40 kg/cm
2 holding pressure to discharge. There was no pressure bleed to press opening-and no
significant post cure. The board thickness was 1.27 cm.
[0051] The results are set forth in the following tables wherein the test results are expressed
as ASTM D 1037 values and wherein:
m c = moisture content
IB = internal bond
TS = cold water thickness swell, 24 hour immersion
LE = linear expansion, wet, after 3 hour boil
MOE = modulus of elasticity
Resin A = polymethylene polyphenyl polyisocyanate ("ARCO PMDI 7 79-4")
Resin P = do ("PAPI 580")
Resin R = do. ("RUBICON PBA 1042")
Resin R' = methylene diphenyl diisocyanate reacted with polypropylene glycol (m.w.
2000)
R" = do. (m.w. 1000)
R"' = methylene diphenyl diisocyanate reacted with methacrylic acid glycol ester
Resin T = toluene diisocyanates reacted with glycerine
Resin HX = hexamethylene diisocyanate reacted with glycerine ("Mondur HX")
Resin W = methylene bis(4-cyclohexyl isocyanate) ("Desmodur W")
Resin UF = commercial urea formaldehyde particle board resin
Resin PF = commercial phenol formaldehyde particle board resin
C1 kraft lignin = chlorinated kraft lignin solids containing 3% by weight chlorine,
expressed as chloride ion.


[0052] It will be observed from the results reported in the table that the glues of the
invention performed satisfactorily as particle board glues, even though they contained
a large proportion of lignin, and contained no wax. In substantially all cases their
performance met commercial particle board standards, and compared favorably with the
performance of the control commercial urea formaldehyde and phenol formaldehyde particle
board glues.
EXAMPLE 27
[0053] This sample illustrates the application of the adhesive of the invention to the production
of wood fiberboard.
[0054] Mixed fir wood was reduced to the form of wood fibers (as opposed to the wood particles
of the preceding examples). The fibers had a moisture content of about 10% by weight.
[0055] The fibers were sprayed over a spray period of about 2 minutes with an adhesive comprising
2.35% isocyanate prepolymer (polymethylene polyphenyl polyisocyanate; "Rubicon PBA
1042") and 1.15% of calcium base waste liquor having a solids content of 50% by weight.
The adhesive mixture contained no wax. The adhesive application was 3.5%, dry fiber
basis.
[0056] The adhesive coated fibers were felted into a mat over a forming time of about 10
minutes. The mat was cold pressed for preliminary consolidation and then hot pressed
for 4.5 minutes using a pressure of 24.55 kg/cm
2 to stops, followed by 15.40 kg/cm? for holding.
[0057] The resulting laboratory boards had properties as follows:

[0058] Control fiberboards made as above except containing no waste lignin had properties
as follows:

[0059] It may be seen that the fiberboards containing 33% waste liquor replacing polyisocyanate
in the binder maintained adequate strength properties and essentially equivalent dimensional
properties on exposure to water. This is important in view of the extensive use of
medium density fiberboard as exterior siding.
EXAMPLE 28
[0060] This example illustrates the application of the adhesives of the invention to the
gluing of solid pieces of wood. The adhesive employed was a mixture of isocyanate
prepolymer and lignin, without wax.
[0061] The isocyanate prepolymer was polymethylene-polyphenyl isocyanate ("MDI"). This was
employed as an emulsion having about 50% solids and containing about 5% cellulosic
filler. The emulsion solids comprised the isocyanate and about 50% polyvinyl alcohol-acetate
chain builder.
[0062] Mixed with the resulting polyvinyl-isocyanate composition, sold commercially by Ashland
Chemical Co. under the brand name of "Megabond", was sufficient 50% solids calcium
base sulfite waste liquor ("Toranil") to yield a glue containing 25% lignin solids.
[0063] The glue was applied to Douglas Fir 2x4 lumber machined on the ends with an Am. Inst.
of Timber Construction (AITC)-approved 2.86 cm finger joint pattern. The lumber had
a moisture content of 12%.
[0064] The adhesive application was ten grams per joint. After the joints have been compressed
cold at 101.7 kg/cm
2 for at least three seconds, the net glue retained was seven grams per joint after
glue squeeze out.
[0065] The lumber joints were cured for five days at 20°C, ripped lengthwise to 3.71 cm
square cross section and subjected to the AITC wet and dry bending tests to destruction.
The results were as follows:

[0066] Both the Megabond control and lignin-containing adhesives met AITC and Western Wood
Products Association (WWPA) specifications for end-joining structural lumber
1. A liquid adhesive comprising a solution of lignin characterised in that it comprises
an organic polyisocyanate polymer having a molecular weight of 200 to 10,000 and an
aqueous solution of lignin solids derived from the chemical pulping of a lignocellulose,
with or without formaldehyde in the proportion of 3 to 6 parts by weight of polyisocyanate
polymer per part by weight of formaldehyde.
2. A liquid adhesive comprising a solution of lignin characterised in that it comprises
the following in parts by weight, (a) an organic polyisocyanate polymer having a molecular
weight of 200 to 10,000 in the proportion of 20-95 parts, (b) an aqueous solution
of lignin solids derived by the chemical pulping of lignocellulose in the proportion
of 5-80 parts of lignin solids dissolved in 5-1000 parts of water, including water
derived from the aqueousjlignin solution used, with or without (c) formaldehyde in
the proportion of one part by weight for each 3 to 6 parts by weight of polyisocyanate
polymer.
3. An adhesive as claimed in claim 1 or claim 2 further characterised in that said
organic polyisocyanate polyer is present in the proportion of 50-80 parts by weight,
said lignin solids in the proportion of 20-50 parts by weight, said lignin solids
in the proportion of 20-50 parts by weight and said water in the proportion of 20-500
parts by weight.
4. An adhesive as claimed in any of claims 1 to 3, further characterised in that said
polyisocyanate polymer has a molecular weight of from 300 to 2,000.
5. An adhesive as claimed in any of claims 1 to 4, further characteriscd in that said
lignin solids is calcium, ammonium or sodium base sulfite waste liquor or Kraft waste
liquor.
6. An adhesive as claimed in any of claims 1 to 4 further characterised in that said
lignin solids comprises chlorinated or brominated sulfite waste liquor.
7. An adhesive as claimed in any of claims 1 to 6 further characterised in that said
organic polyisocyanate polymer comprises a polymethylene polyphenyl polyisocyanate,
diphenylmethane diisocyanate, triphenylmethane tri-isocyanate or toluene diisocyanates.
8. An adhesive as claimed in any of claims 1 to 6 further characterised in that said
organic polyisocyanate polymer is the reaction product of a diisocyanate monomer with
a polyester or polyol containing active hydrogen atoms.
9. An adhesive as claimed in claim 8 further characterised in that said polyol is
a polyethylene or polypropylene glycol having a molecular weight of up to 6000, trimethylol
propane or 2,4,6-hexane triol.
10. An adhesive as claimed in claim 8 further characterised in that said polyester
is propylene glycol partially esterifiec with adipic acid.
11. A process for producing a wood composition which comprises coating wood fibres
or particles with an adhesive according to any of the preceding claims and consolidating
the coated fibres or particles in a hot press to desired thickness and density.
1. A process for the production of an organic polyisocyanate-lignin adhesive characterised
in that it comprises emulsifying an organic polyisocyanate polymer having a molecular
weight of 200 to 10,000 with an aqueous solution of lignin solids derived from the
chemical pulping of a lignocellulose and with or without the inclusion of formaldehyde
in the proportion of one polymer part by weight for each 3 to 6 parts by weight of
polyisocyanatel
2. A process for the production of an organic polyisocyanate-lignin adhesive characterised
in that it comprises emulsifying an organic polyisocyanate polymer having a molecular
weight of 200 to 10,000 with an aqueous solution of lignin solids derived by the chemical
pulping of lignocellulose in the proportion of 5-80 parts of lignin solids dissolved
in 5-1000 parts of water, including water derived from the aqueous lignin solution,
with or without the inclusion of formaldehyde in the proportion of one part by weight
for each 3 to 6 parts by weight of polyisocyanate polymer.
3. A process as claimed in claim 1 or claim 2 further characterised in that said organic
polyisocyanate polymer is used in the proportion of 50-80 parts by weight, said lignin
solids in the proportion of 20-50 parts by weight and water derived from said aqueous
solution and/or otherwise added in . the proportion of 20-500 parts by weight.
4. A process as claimed in any of claims 1 to 3 further characterised in that said
polyisocyanate polymer has a molecular weight of from 300 to 2,000.
5. A process as claimed in any of claims 1 to 4 further characterised in that said
lignin solids is calcium, ammonium or sodium base sulfite waste liquor or Kraft waste
liquor.
6. A process as claimed in any of claims 1 to 4 further characterised in that said
lignin solids is chlorinated or brominated sulfite waste liquor.
7. A process as claimed in any of claims 1 to 6 further characterised in that said
organic polyisocyanate polymer comprises a polymethylene polyphenyl polyisocyanate,
diphenylmethane-diisocyanate, triphenylmethane tri-isocyanate or toluene diisocyanates.
8. A process as claimed in any of claims 1 to 6 further characterised in that said
organic polyisocyanate polymer is the reaction product of a diisocyanate monomer with
a polyester or polyol containing active hydrogen atoms.
9. A process as claimed in claim 8 further characterised in that said polyol is a
polyethylene or polypropylene glycol having a molecular weight of up to 6000, trimethylol
propane or 2,4,6-hexane triol.
10. A process as claimed in claim 8 further characterised in that said polyester is
propylene glycol partially esterified with adipic acid.
11. A process for producing a wood composition which comprises coating wood fibres
or particles with an adhesive produced by the process according to any of the preceding
claims and consolidating the coated fibres or particles in a hot press to desired
thickness and density.